Feedback-mediated dynamics in a model of a compliant thick ascending limb
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Publication:621962
DOI10.1016/j.mbs.2010.10.002zbMath1204.92028OpenAlexW2049461155WikidataQ34348690 ScholiaQ34348690MaRDI QIDQ621962
Publication date: 31 January 2011
Published in: Mathematical Biosciences (Search for Journal in Brave)
Full work available at URL: http://europepmc.org/articles/pmc2991496
Probabilistic models, generic numerical methods in probability and statistics (65C20) PDEs in connection with biology, chemistry and other natural sciences (35Q92) Physiology (general) (92C30)
Related Items (12)
Signal transduction in a compliant short loop of Henle ⋮ Determining risk factors for triple whammy acute kidney injury ⋮ Modeling transport and flow regulatory mechanisms of the kidney ⋮ The intrarenal renin-angiotensin system in hypertension: insights from mathematical modelling ⋮ Control and modulation of fluid flow in the rat kidney ⋮ Optimizing SGLT inhibitor treatment for diabetes with chronic kidney diseases ⋮ Theoretical assessment of the Ca2+ oscillations in the afferent arteriole smooth muscle cell of the rat kidney ⋮ Bifurcation study of blood flow control in the kidney ⋮ Mathematical modeling of renal hemodynamics in physiology and pathophysiology ⋮ Tubular fluid flow and distal NaCl delivery mediated by tubuloglomerular feedback in the rat kidney ⋮ Feedback-mediated dynamics in a model of coupled nephrons with compliant thick ascending limbs ⋮ Modeling Blood Flow Control in the Kidney
Cites Work
- A region-based model framework for the rat urine concentrating mechanism
- Multistable dynamics mediated by tubuloglomerular feedback in a model of coupled nephrons
- A dynamic numerical method for models of renal tubules
- Effect of tubular inhomogeneities on filter properties of thick ascending limb of Henle's loop
- A Dynamic Numerical Method for Models of the Urine Concentrating Mechanism
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